Highly Efficient Delivery of Adeno-Associated Viral Vectors to the Primate Retina

被引:62
作者
Boye, Shannon E. [1 ]
Alexander, John J. [2 ]
Witherspoon, C. Douglas [3 ]
Boye, Sanford L. [1 ]
Peterson, James J. [1 ]
Clark, Mark E. [3 ]
Sandefer, Kristen J. [4 ]
Girkin, Chris A. [3 ]
Hauswirth, William W. [1 ]
Gamlin, Paul D. [3 ]
机构
[1] Univ Florida, Coll Med, Dept Ophthalmol, Gainesville, FL 32610 USA
[2] Emory Univ, Dept Human Genet, Atlanta, GA 30322 USA
[3] Univ Alabama Birmingham, Dept Ophthalmol, Birmingham, AL 35294 USA
[4] Univ Alabama Birmingham, Dept Neurol, UAB Stn, Birmingham, AL 35294 USA
基金
美国国家卫生研究院; 美国国家科学基金会;
关键词
LEBERS CONGENITAL AMAUROSIS; INTERNAL LIMITING MEMBRANE; OPTICAL COHERENCE TOMOGRAPHY; OCULAR SUBRETINAL INJECTION; RESTORES VISUAL FUNCTION; MUTANT AAV VECTORS; ON-BIPOLAR CELLS; GENE-THERAPY; GANGLION-CELLS; MACULAR HOLES;
D O I
10.1089/hum.2016.085
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Adeno-associated virus (AAV) has emerged as the preferred vector for targeting gene expression to the retina. Subretinally injected AAV can efficiently transduce retinal pigment epithelium and photoreceptors in primate retina. Inner and middle primate retina can be transduced by intravitreally delivered AAV, but with low efficiency. This is due to dilution of vector, potential neutralization of capsid because it is not confined to the immune-privileged retinal compartment, and the presence of the inner limiting membrane (ILM), a barrier separating the vitreous from the neural retina. We here describe a novel "subILM" injection method that addresses all three issues. Specifically, vector is placed in a surgically induced, hydrodissected space between the ILM and neural retina. In an initial experiment, we injected viscoelastic (Healon (R)), a substance we confirmed was biocompatible with AAV, to create a subILM bleb and subsequently injected AAV2-GFP into the bleb after irrigation with basic salt solution. For later experiments, we used a Healon-AAV mixture to place single, subILM injections. In all cases, subILM delivery of AAV was well tolerated-no inflammation or gross structural changes were observed by ophthalmological examination or optical coherence tomography. In-life fluorescence imaging revealed profound transgene expression within the area of the subILM injection bleb that persisted for the study duration. Uniform and extensive transduction of retinal ganglion cells (RGCs) was achieved in the areas beneath the subILM bleb. Transduction of Muller glia, ON bipolar cells, and photoreceptors was also observed. Robust central labeling from green fluorescent protein-expressing RGCs confirmed their continued survival, and was observed in the lateral geniculate nucleus, the superior colliculus, and the pretectum. Our results confirm that the ILM is a major barrier to transduction by AAV in primate retina and that, when it is circumvented, the efficiency and depth to which AAV2 promotes transduction of multiple retinal cell classes are greatly enhanced.
引用
收藏
页码:580 / 597
页数:18
相关论文
共 65 条
[1]  
Agbandje-McKenna M, 2011, METHODS MOL BIOL, V807, P47, DOI 10.1007/978-1-61779-370-7_3
[2]  
Amoaku W, GUIDELINES INTRAVITR
[3]   The human visual cortex responds to gene therapy-mediated recovery of retinal function [J].
Ashtari, Manzar ;
Cyckowski, Laura L. ;
Monroe, Justin F. ;
Marshall, Kathleen A. ;
Chung, Daniel C. ;
Auricchio, Alberto ;
Simonelli, Francesca ;
Leroy, Bart P. ;
Maguire, Albert M. ;
Shindler, Kenneth S. ;
Bennett, Jean .
JOURNAL OF CLINICAL INVESTIGATION, 2011, 121 (06) :2160-2168
[4]   Long-Term Effect of Gene Therapy on Leber's Congenital Amaurosis [J].
Bainbridge, J. W. B. ;
Mehat, M. S. ;
Sundaram, V. ;
Robbie, S. J. ;
Barker, S. E. ;
Ripamonti, C. ;
Georgiadis, A. ;
Mowat, F. M. ;
Beattie, S. G. ;
Gardner, P. J. ;
Feathers, K. L. ;
Luong, V. A. ;
Yzer, S. ;
Balaggan, K. ;
Viswanathan, A. ;
de Ravel, T. J. L. ;
Casteels, I. ;
Holder, G. E. ;
Tyler, N. ;
Fitzke, F. W. ;
Weleber, R. G. ;
Nardini, M. ;
Moore, A. T. ;
Thompson, D. A. ;
Petersen-Jones, S. M. ;
Michaelides, M. ;
van den Born, L. I. ;
Stockman, A. ;
Smith, A. J. ;
Rubin, G. ;
Ali, R. R. .
NEW ENGLAND JOURNAL OF MEDICINE, 2015, 372 (20) :1887-1897
[5]   Effect of gene therapy on visual function in Leber's congenital amaurosis [J].
Bainbridge, James W. B. ;
Smith, Alexander J. ;
Barker, Susie S. ;
Robbie, Scott ;
Henderson, Robert ;
Balaggan, Kamaljit ;
Viswanathan, Ananth ;
Holder, Graham E. ;
Stockman, Andrew ;
Tyler, Nick ;
Petersen-Jones, Simon ;
Bhattacharya, Shomi S. ;
Thrasher, Adrian J. ;
Fitzke, Fred W. ;
Carter, Barrie J. ;
Rubin, Gary S. ;
Moore, Anthony T. ;
Ali, Robin R. .
NEW ENGLAND JOURNAL OF MEDICINE, 2008, 358 (21) :2231-2239
[6]   AAV2 Gene Therapy Readministration in Three Adults with Congenital Blindness [J].
Bennett, Jean ;
Ashtari, Manzar ;
Wellman, Jennifer ;
Marshall, Kathleen A. ;
Cyckowski, Laura L. ;
Chung, Daniel C. ;
McCague, Sarah ;
Pierce, Eric A. ;
Chen, Yifeng ;
Bennicelli, Jeannette L. ;
Zhu, Xiaosong ;
Ying, Gui-shuang ;
Sun, Junwei ;
Wright, J. Fraser ;
Auricchio, Alberto ;
Simonelli, Francesca ;
Shindler, Kenneth S. ;
Mingozzi, Federico ;
High, Katherine A. ;
Maguire, Albert M. .
SCIENCE TRANSLATIONAL MEDICINE, 2012, 4 (120)
[7]   Impact of Heparan Sulfate Binding on Transduction of Retina by Recombinant Adeno-Associated Virus Vectors [J].
Boye, Sanford L. ;
Bennett, Antonette ;
Scalabrino, Miranda L. ;
McCullough, K. Tyler ;
Van Vliet, Kim ;
Choudhury, Shreyasi ;
Ruan, Qing ;
Peterson, James ;
Agbandje-McKenna, Mavis ;
Boye, Shannon E. .
JOURNAL OF VIROLOGY, 2016, 90 (08) :4215-4231
[8]   A Comprehensive Review of Retinal Gene Therapy [J].
Boye, Shannon E. ;
Boye, Sanford L. ;
Lewin, Alfred S. ;
Hauswirth, William W. .
MOLECULAR THERAPY, 2013, 21 (03) :509-519
[9]   The Human Rhodopsin Kinase Promoter in an AAV5 Vector Confers Rod- and Cone-Specific Expression in the Primate Retina [J].
Boye, Shannon E. ;
Alexander, John J. ;
Boye, Sanford L. ;
Witherspoon, Clark D. ;
Sandefer, Kristen J. ;
Conlon, Thomas J. ;
Erger, Kirsten ;
Sun, Jingfen ;
Ryals, Renee ;
Chiodo, Vince A. ;
Clark, Mark E. ;
Girkin, Christopher A. ;
Hauswirth, William W. ;
Gamlin, Paul D. .
HUMAN GENE THERAPY, 2012, 23 (10) :1101-1115
[10]   Retinoschisin gene therapy in photoreceptors, Muller glia or all retinal cells in the Rs1h-/- mouse [J].
Byrne, L. C. ;
Ozturk, B. E. ;
Lee, T. ;
Fortuny, C. ;
Visel, M. ;
Dalkara, D. ;
Schaffer, D. V. ;
Flannery, J. G. .
GENE THERAPY, 2014, 21 (06) :585-592